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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >An Examination of Anisotropic Void Evolution in Aluminum Alloy 7075
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An Examination of Anisotropic Void Evolution in Aluminum Alloy 7075

机译:各向异性孔隙演化的考试铝合金7075

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This paper investigates the anisotropy of void evolution and its relation with ductility in the high strength rolled aluminum alloy 7075-T7351. Smooth tension specimens are extracted from three principal material orientations, i.e. rolling (R), transverse (T), and short transverse (S). The mechanical behavior of these specimens is characterized and the varying ductility in the three orientations is clearly observed. Electron Backscattered Diffraction (EBSD), optical microscopy, and Scanning Electron Microscopy (SEM) are employed to characterize the grain structure and the size, location, and chemical composition of the intermetallic particles. In-situ X-ray Tomography (XCT) experiments are performed to obtain tomographic images of the specimens at critical loading steps. The radiographs acquired during the tensile test are then reconstructed and examined through quantitative analysis to partition particles and voids. These tomographic images enable us to visualize void evolution as the specimens are loaded along material orientations. The tomographic images clearly illustrate anisotropy in the void evolution and highlight the importance of local coalescence in developing 1D and 2D void structures prior to global coalescence. Fractography confirms tomography. These findings motivate model forms with appropriate internal variables to adequately describe the dominant mechanisms which govern anisotropic void evolution.
机译:本文调查了各向异性的空白进化及其与延性的关系高强度铝合金7075 t7351滚。光滑的张力标本提取三个主要材料方向,即滚动(R)、横向(T)和横向(S)。这些标本的力学行为和不同延性特征三个方向明显观察到。背散射衍射(EBSD),光学显微镜和扫描电子显微镜(SEM)是用来描述谷物结构和尺寸,位置,和化学金属间化合物的组成粒子。原位x射线断层扫描(XCT)实验执行获得的层析图像标本在关键加载步骤。在拉伸试验获取的射线照片然后重建和检查通过分区粒子和定量分析空洞。想象空间演化的标本加载材料方向。层析图像清楚地说明各向异性在孔隙演化和突出当地发展中1 d聚结的重要性全球前和2 d空间结构聚结。这些发现激励模型形式充分适当的内部变量描述管理的主导机制各向异性孔隙演化。

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